重庆大学信息物理社会可信服务计算教育部重点实验室

信息物理社会可信服务计算教育部重点实验室

KEY LABORATORY OF DEPENDABLE SERvICE COMPUTING IN cYBER PHYSICAL SOCIETY( CHONGQING UNIVERSITY) MINISTRY OF EDUCATION

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易达的个人主页

超表面天线的小型化和宽带化理论设计

易达

正高

基本信息



职称:正高

E-mail::yida_cqu@cqu.edu.cn
研究方向:超表面天线的小型化和宽带化理论设计

地址:重庆市沙坪坝区沙正街174号重庆大学A区主教学楼2209 (邮编400044)

个人简介



2014年和2019年分别获得浙江大学电子科学与技术专业学士和博士学位,2019年7月以重庆大学“百人计划”特聘研究员身份加入微电子与通信工程学院。研究方向为新型超表面和二维材料在高速电路、先进封装中的电磁兼容方面和5G小型化天线方面的应用。在电磁屏蔽、吸波、滤波等方面取得系列成果,在IEEE Transactions on Microwave Theory and TechnologyIEEE Transactions on Antennas and Propagations等著名国际期刊和国际会议上发表20余篇学术论文,学术成果分别获得IWS2016最佳论文奖、SPI2017国际会议的青年研究员奖。先后参与和完成了国家自然科学基金一项,省自然科学基金两项及长电科技的多项横向合作项目,相关产品得到企业界的高度评价,已申请4项发明专利、2项新型实用专利。

代表性论文



[1]D. Yi, X. Wei, R. Yang, X. Gao, and Y. Yang, “Modeling and Analyzing High-Order Modes in Periodic-Stub-Loaded Stripline for Wideband Filter Design,”IEEE Trans. Electromagn. Compat.,Early Access,2019.【SCI

[2]D. Yi,B. Shen, X. Wei, L. Tong, Y. Xu, J. Li, S. Xu, Y. Zhang, W. Zheng, and Y. Yang,“Subwavelength PeriodicShieldingMaterials: Towards Enhanced Shielding of The Incomplete Enclosure,”IEEE Microwave and Wireless Components Letters,vol. 29, no. 2, pp. 113-115, 2019.【SCI

[3]D. Yi, X. Wei, B. Shen, Y. Li, W. Zheng, X. Gao, and Y. Yang,“A Rasorber-Like Waveguide Based on Thin Film,”IEEE Microwave and Wireless Components Letters, vol. 28, no. 7, pp. 558-560, 2018.【SCI

[4]D. Yi, X. Wei, Y. Xu,“Tunable Microwave Absorber Based on Patterned Graphene,”IEEE Trans. Microwave Theory Techn., vol. 65, no. 8, pp. 2819-2826, 2017.【SCI

[5]D. Yi, X. Wei, Y. Xu,“A Transparent Microwave Absorber Based on Patterned Graphene: Design, Measurement, and Enhancement,”IEEE Trans. Nanotechnol., vol. 16, no. 3, pp. 484-490, 2017.【SCI

[6] Z. Chen,D. Yi, B. Shen, L. Zhang, X. Ma, Y. Pang, L. Liu, X. Wei, and W. Zheng,“Semi-transparent Biomass-derived Macroscopic Carbon Grids for Efficient and Tunable Electromagnetic Shielding,”Carbon, vol. 139, pp. 271-278, 2018.【SCI,共同一作

[7] B. Shen, Y. Li,D. Yi, W. Zhai, X. Wei, and W. Zheng,“Microcellular Graphene Foam for Improved Broadband Electromagnetic Interference Shielding,”Carbon, vol. 102, pp. 154-160, 2016.【SCIESI高被引

[8]D. Yi, X. Wei,“An Improved Equivalent Circuit Model of Spoof Surface Plasmon Transmission Line,”IEEE Workshop on Signal and Power Integrity (SPI), 2017.【EI,获青年研究员奖

[9]D. Yi, X. Wei, and Y. Xu,“Experimental Demonstration of Transparent Microwave Absorber Based on Graphene.”pp. 1-4.IEEE MTT-s International Wireless Symposium, 2016.【EI,获最佳论文奖

[10] R. Yang, X. Wei, Y. Shu,D. Yi, and Y. Yang, "A Miniature Multi-Components Probe for Near-Field Scanning,"IEEE Transactions on Antennas and Propagation,pp. 1-1, 2019.【SCI

[11] G. Lovat,D. Yi, P. Burghignoli, R. Araneo, S. Celozzi, and X. Wei,“Theoretical Analysis of the First Higher-Order Mode in Grounded Graphene Nanoribbons,”IEEE Trans. Nanotechnol., pp. 484-490, 2018.【SCI

[12] W. Ding, X. Wei, Y. Shu,D. Yi, and T. Xiang,“Inductance Extraction of Grid Power Distribution Network,”IEEETrans.Compon.Packag.Manuf.Technol., vol. 8, no. 6, pp. 1066-1072, 2017.【SCI

[13] W. Ding, X. Wei,D. Yi, Y. Fei,“A Closed-form Solution for the Impedance Calculation of Grid Power Distribution Network,”IEEE Trans. Electromagn. Compat., vol. 59, no. 5, pp. 1449-1456, 2017.【SCI

[14] Y. Li, B. Shen,D. Yi, L. Zhang, W. Zhai, X. Wei, and W. Zheng,“The Influence of Gradient and Sandwich Configurations on The Electromagnetic Interference Shielding Performance of Multilayered Thermoplastic Polyurethane/Graphene Composite Foams,”Compos.Sci.Technol., vol. 138, pp. 209-216, 2017.【SCI

[15] L. Yang, X. Wei,D. Yi, J. Jin,“A Bandpass Frequency Selective Surface with a Low Cross-Polarization Based on Cavities with a Hybrid Boundary,”IEEE Trans. Antennas Propagat., vol. 65, no. 2, pp. 654-661, 2017.【SCI

[16] B. Shen, Y. Li,D. Yi, W. Zhai, X. Wei, and W. Zheng,“Strong Flexible Polymer/graphene Composite Films with 3D Saw-tooth Folding for Enhanced and Tunable Electromagnetic Shielding,”Carbon, vol. 113, pp. 55-62, 2017.【SCI

[17] Y. Xu, E. Li, X. Wei, andD. Yi, “A Novel Tunable Absorber Based on Vertical Graphene Strips,”IEEE Microwave and Wireless Components Letters, vol. 26, no. 1, pp. 10-12, 2016.【SCI

发明专利



[1]易达,魏兴昌,杨彦彬,基于电磁场近场提取导电薄膜表面电导率测试装置及方法,实用新型专利,授权公告号:CN209117761U。(同样的发明创造已同日申请发明专利)

[2]易达,魏兴昌,舒宇飞,杨彦彬,一种天线后向辐射抑制结构,实用新型专利,授权公告号:CN209104359U。(同样的发明创造已同日申请发明专利)

[3]易达,魏兴昌,杨彦彬,一种全金属电磁屏蔽散热器,发明专利,申请号:201811391784.X。


近期学术活动



[1] IEEE Trans.TAP,TNANO,TEMC,Carbon等审稿人

[2] EMC Compo 2019 TPC Member,Session chair

[3] ICCEM 2020 TPC Member,Session chair

学术获奖



[1] IWS2016最佳论文奖

[2] SPI2017国际会议的青年研究员奖

[3] 2017年浙江大学博士研究生国家奖学金


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